Targeting Factors of Ecotax Based on Life Cycle Assessment for Select Criteria Mechanism using waste to Energy Technology of Environmental Law and its Enforcing Regulations

Zharama M. Llarena
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Abstract

Every drug product, with its apparent patent and trademark from European Patent Commission (EPC), must exhibit its safety utilization starting from its ecological cultivation up to its warranty disposal back to the environment termed as Life Cycle Assessment of drugs. Climate change may be influenced and worsened by several determinants in which pharmaceutical sector may play a big role to environmental pollution and may eventually lead to risks of developing health problems due to environmental toxicities. Therefore, there is a crucial need for remediating drug wastes into renewable energies as corporate responsibility of environmental taxation for the advocacy of Sustainable Development as promoted and regulated by Kyoto Protocol of United Nations Millennium Development Goals of economic prosperity and safety of the public. This paper aims to delineate the waste to energy technology functions for addressing its problems and concerns in carbon tax such as the quantity of renewable power percentage, the amount of greenhouse gases of climate change and its environmental pollutants from waste disposal of expired and used drugs, the prevalence of morbidity and mortality rates in relation to environmental exposure to hazardous substances, and its relative monetary progress and success. Kinetic modelling of equations and its MATLAB simulation code is important for application of waste to energy technology for Sustainable Development. Therefore, delineation of carbon tax in kinetic modelling is quite necessary in resolving issues in economy, society, and environment as exhibited in SELECT criteria mechanism of decision making.
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基于生命周期评价的生态税收目标因素选择准则、废物转化为能源的环境法律技术及其实施法规
每一种药品都必须具有欧洲专利委员会(EPC)的专利和商标,从其生态培育到其保修处置回到环境中,都必须展示其安全利用,这被称为药品生命周期评估。气候变化可能受到若干决定因素的影响和恶化,在这些决定因素中,制药部门可能对环境污染发挥重大作用,并可能最终导致因环境毒性而产生健康问题的风险。因此,迫切需要将药物废物转化为可再生能源,作为环境税收的企业责任,倡导可持续发展,促进和规范经济繁荣和公众安全的联合国千年发展目标《京都议定书》。本文旨在描述废物转化为能源的技术功能,以解决其在碳税中的问题和关注,如可再生能源百分比的数量,过期和使用过的药物的废物处理产生的气候变化的温室气体及其环境污染物的数量,与环境暴露于有害物质有关的发病率和死亡率的患病率,以及其相对的货币进展和成功。方程的动力学建模及其MATLAB仿真代码对废物转化为能源技术的可持续发展具有重要意义。因此,在动力学模型中对碳税的刻画对于解决SELECT标准决策机制中所表现出的经济、社会和环境问题是十分必要的。
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